Michael Murrell
Affiliations: | Yale University, New Haven, CT |
Area:
active matterGoogle:
"Michael Murrell"Parents
Sign in to add mentorHarvey F. Lodish | research assistant | MIT (Cell Biology Tree) | |
Kevin J. Yarema | research assistant | Johns Hopkins (E-Tree) | |
Andre Levchenko | research assistant | 2001-2004 | Johns Hopkins |
Roger D Kamm | grad student | 2004-2009 | MIT (E-Tree) |
Cecile Sykes | post-doc | Institut Curie, Paris, France | |
Margaret L. Gardel | post-doc | 2009-2013 | Chicago (Physics Tree) |
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Publications
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Sakamoto R, Murrell MP. (2024) Composite branched and linear F-actin maximize myosin-induced membrane shape changes in a biomimetic cell model. Communications Biology. 7: 840 |
Banerjee DS, Freedman SL, Murrell MP, et al. (2024) Growth-induced collective bending and kinetic trapping of cytoskeletal filaments. Cytoskeleton (Hoboken, N.J.) |
Ang I, Yousafzai MS, Yadav V, et al. (2024) Elastocapillary effects determine early matrix deformation by glioblastoma cell spheroids. Apl Bioengineering. 8: 026109 |
Sakamoto R, Murrell MP. (2024) F-actin architecture determines the conversion of chemical energy into mechanical work. Nature Communications. 15: 3444 |
Banerjee DS, Freedman SL, Murrell MP, et al. (2024) Growth-induced collective bending and kinetic trapping of cytoskeletal filaments. Biorxiv : the Preprint Server For Biology |
Sun ZG, Yadav V, Amiri S, et al. (2023) Cofilin-mediated actin filament network flexibility facilitates 2D to 3D actomyosin shape change. European Journal of Cell Biology. 103: 151379 |
Amiri S, Muresan C, Shang X, et al. (2023) Intracellular tension sensor reveals mechanical anisotropy of the actin cytoskeleton. Nature Communications. 14: 8011 |
Lee SH, Yousafzai MS, Mohler K, et al. (2023) SPAK-dependent co-transporter activity mediates capillary adhesion and pressure during glioblastoma migration in confined spaces. Molecular Biology of the Cell. mbcE23030103 |
Sakamoto R, Banerjee DS, Yadav V, et al. (2023) Author Correction: Membrane tension induces F-actin reorganization and flow in a biomimetic model cortex. Communications Biology. 6: 470 |
Sakamoto R, Banerjee DS, Yadav V, et al. (2023) Membrane tension induces F-actin reorganization and flow in a biomimetic model cortex. Communications Biology. 6: 325 |